Direct from Xi'an Prima's ISO13485 Manufacturing Facility. High-power laser components and handle modules engineered for therapeutic precision.
Welcome to Xi’an Prima Beauty Equipment Co., Ltd., your trusted partner in the world of high-quality beauty equipment. With over 10 years of experience in manufacturing laser beauty equipment, we take pride in being a leading beauty equipment factory, specializing in the production, research, and development of cutting-edge aesthetic technologies.
Prima Beauty Laser is recognized globally for providing a wide range of high-quality systems, including Diode hair removal laser machines, CO2 fractional lasers, Pico laser machines, IPL systems, and comprehensive skin management units. Our head office integrates the research and development of diode lasers and solid-state lasers, bridging the gap between chip-level manufacturing and high-end finished medical beauty systems.
An in-depth look at energy dynamics, wavelength selection, pulse width modulation, and next-generation photoacoustic treatments.
Historically, laser tattoo removal relied on photothermal destruction. This method utilized Q-switched nanosecond lasers to heat target ink pigments. While effective for some ink types, the thermal diffusion coefficient of small ink particles often led to collateral thermal damage in the surrounding dermal tissue. This risk caused scarring and dyschromia in darker skin phototypes.
The modern clinical paradigm has shifted towards pure Photoacoustic disruption. By engineering lasers that operate in the picosecond domain (specifically sub-800ps), our machines generate massive peak power. This rapid pulse discharge creates a localized acoustic shockwave that shatters ink pigments into microscopic dust-like particles. The lymphatic system then eliminates these particles with minimal thermal impact on surrounding tissue.
No single wavelength can target all tattoo pigments effectively. Professional-grade tattoo removal machines require multi-wavelength configurations to cover the absorption spectrum of common inks:
As a leading R&D firm, Xi'an Prima is actively developing solid-state diode-pumped systems that allow rapid pulsing without energy degradation. We are pioneering technology to combine Picosecond and Nanosecond pulses in a single clinical platform. This technique, known as the "Dual-Pulse Modality," allows the practitioner to use nanosecond pulses to break down large ink clusters first, and then follow with picosecond pulses to target remaining micro-particles.
Additionally, our future laser architectures integrate intelligent Real-time Fluence Calibration (RFC). This system uses real-time back-reflection monitoring to automatically adjust energy outputs, protecting the skin from unexpected energy spikes and ensuring consistent clinical outcomes.
Combining vertically integrated laser production, advanced quality assurance, and comprehensive client care.
As a mid-to-high-end beauty equipment supplier, we integrate the R&D of laser chips, micro-channel cooling, and advanced driving electronics under one roof, keeping our clients at the forefront of the industry.
Every laser source, diode stack, and finished machine undergoes 100+ hours of continuous aging and pressure tests. Our products meet international safety standards, ensuring reliable clinical performance.
We provide full customization, including custom wavelengths, casing designs, software user interfaces, and custom power outputs. This helps you build brand equity in your local market.
Our commitment to global standards is backed by strict international manufacturing certifications.
How vertical integration and automated packaging line engineering deliver high quality at competitive prices.
Xi'an Prima is located in the high-tech optoelectronic industrial corridor of Xi'an. We have upgraded our manufacturing base to match Smart Factory 4.0 guidelines. Our facilities feature Class 10,000 cleanrooms and Class 100 localized laminar flow benches, preventing dust particles from settling on delicate laser facet elements during packaging.
Our key technological advantage lies in Semiconductor Diode Cladding and Gold-Tin (AuSn) Eutectic Bonding. Traditional indium solder is prone to thermal fatigue and electromigration under high current densities, which can cause premature diode failure. By using AuSn bonding technology, we ensure our diode stacks can withstand billions of pulses without degradation. This provides reliable stability for clinics running high-volume treatments.
Heat dissipation is a common failure point for high-power laser systems. Our Micro-Channel Cooler (MCC) technology uses a series of micro-channels, each about the width of a human hair, to cycle coolant directly beneath the active laser chip. This layout increases thermal dissipation efficiency by 40% compared to standard Macro-channel designs. As a result, it keeps the junction temperature low, prevents wavelength drift, and ensures stable energy outputs during long tattoo removal sessions.
The global aesthetic device supply chain is often subject to geopolitical and logistics disruptions. Xi'an Prima addresses this by sourcing raw crystalline matrices, optical fibers, and control electronics locally in China's advanced industrial hubs. This local vertical integration allows us to:
Comprehensive regulatory compliance, technical training, and international service center operations.
For large-scale medical aesthetic franchises, consistency across locations is key. Xi'an Prima provides customized control software with centralized user profile databases. Clinicians can manage patient records and treatments securely. The system also logs device usage data, helping managers schedule preventative maintenance before a handpiece fails.
We work closely with global distributors to build local service networks. We offer replacement components, such as diode stacks, laser optics, and control boards, to ensure quick turnarounds. Additionally, we provide repair kits and comprehensive training materials for local technicians, helping to minimize clinical downtime.
Aesthetic devices must meet strict regulatory standards to enter international markets. Xi'an Prima has built an in-house compliance team to ensure our products meet local requirements:
Engineered for high-volume aesthetic clinics, medical device manufacturers, and handle repair centers.
A structured, step-by-step path from initial concept to high-volume manufacturing and global delivery.
Every project begins with a consultation with our R&D engineers. We assess your requirements, including power density, wavelengths, cooling integration, and target price points. Our engineering team conducts thermal and structural modeling to verify design feasibility.
Once design parameters are locked, we build prototypes using CNC machining and rapid tooling. These units undergo extensive testing, including thermal profiling, optical alignment audits, and life-cycle tests in our climate chambers.
After prototype approval, we transition to our semi-automated production lines. We use pick-and-place systems and controlled eutectic ovens to maintain precision. Before packaging, every machine runs through a 48-hour burn-in phase to ensure components perform reliably under load.
Providing expert answers to common technical, manufacturing, and clinical integration questions.
The primary difference lies in the pulse width. Nanosecond lasers (Q-switched) have pulse durations in the range of 10^-9 seconds, utilizing photothermal energy to heat and fracture ink pigments. Picosecond lasers operate in the range of 10^-12 seconds, delivering energy faster than the thermal relaxation time of the ink. This results in a photoacoustic effect that shatters ink into smaller particles with less heat generation and lower risk of skin damage.
Indium bonding is softer and susceptible to thermal oxidation and electromigration under high current, which can degrade the laser facet. Gold-Tin eutectic bonding provides high thermal conductivity, structural strength, and resistance to thermal stress. This increases the overall longevity and reliability of the diode stack, even under demanding duty cycles.
Micro-Channel Cooling routes coolant through very small internal channels directly under the laser bars, providing efficient heat transfer. Macro-channel cooling uses wider channels that sit further from the heat source. MCC can lower thermal resistance significantly, preventing laser degradation and allowing the system to run consistently during long treatments.
No, 1064nm targets dark colors like black and dark blue, while 532nm targets warm colors like red and orange. Cool colors like green, teal, and bright blue are less responsive to these wavelengths. To treat these, we recommend adding 755nm or specialized dye handpieces to cover the target absorption spectrum.
For custom casing, hardware, and specialized software interfaces, our standard MOQ starts at 5 units. For standard machines with custom logo branding, we can accommodate orders starting from 1 unit. Contact our sales department to discuss your project requirements.
Our quality control process includes checking incoming materials, monitoring assembly steps, and testing finished systems. All devices undergo continuous burn-in testing and pressure checks to verify energy stability before shipment. We provide detailed quality inspection reports with every delivery.